Poison-Tolerant Fuel Cells

Author:

Selman J. R.1

Affiliation:

1. Department of Chemical and Biological Engineering, Illinois Institute of Technology, Chicago, IL 60616, USA.

Abstract

Alternatives to nickel-based electrocatalysts are being pursued to circumvent the problems contributing to the performance degradation of high-temperature fuel cells.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

Reference5 articles.

1. Ivers-Tiffee E., Virkar A. V., in High-Temperature Solid Oxide Fuel Cells—Fundamentals, Design and Applications, , Singhal S. C. , Kendall K. , Eds. (Elsevier, Oxford, 2003), chap. 9.

2. Enhanced Sulfur and Coking Tolerance of a Mixed Ion Conductor for SOFCs: BaZr 0.1 Ce 0.7 Y 0.2– x Yb x O 3–δ

3. Ivers-Tiffee E., Timmerman H., Leonide A., Menzler N. H., Malzbender J., in Handbook of Fuel Cells—Fundamentals, Technology and Applications, Vol. 6, , Vielstich W. , Yokokawa H. , Gasteiger H. A. , Eds. (Wiley, Chichester, UK, 2009), chap. 64.

4. Selman J. R., in in Fuel Cell Systems, , Blomen L. J. M. J. , Mugerwa M. N. , Eds. (Plenum, New York, 1993), chap. 9, sec. 6.3.1.

5. Sulfur-tolerant anode materials for solid oxide fuel cell application

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